ADXRS646TBGZ-EP-RL Allicdata Electronics

ADXRS646TBGZ-EP-RL Sensors, Transducers

Allicdata Part #:

ADXRS646TBGZ-EP-RLTR-ND

Manufacturer Part#:

ADXRS646TBGZ-EP-RL

Price: $ 83.52
Product Category:

Sensors, Transducers

Manufacturer: Analog Devices Inc.
Short Description: IC GYROSCOPE YAW RATE 32CBGA
More Detail: Gyroscope Z (Yaw) ±250 1kHz Analog Voltage 32-CBGA...
DataSheet: ADXRS646TBGZ-EP-RL datasheetADXRS646TBGZ-EP-RL Datasheet/PDF
Quantity: 1000
500 +: $ 75.92690
Stock 1000Can Ship Immediately
$ 83.52
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Active
Type: Analog
Axis: Z (Yaw)
Range °/s: ±250
Sensitivity (LSB/(°/s)): --
Sensitivity (mV/°/s): 9
Bandwidth: 1kHz
Output Type: Analog Voltage
Voltage - Supply: 5.75 V ~ 6.25 V
Current - Supply: 4mA
Features: Temperature Sensor
Operating Temperature: -55°C ~ 105°C (TA)
Package / Case: 32-BFCBGA
Base Part Number: ADXRS646
Description

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Motion sensors can be used to measure the speed, position, and orientation of the object to which they are attached. They can provide information about the motion of a vehicle, machine, person, or object, and can be used to enhance the safety of moving systems, improve efficiency, and increase the automation of many devices. Gyroscopes are a type of motion sensor that measure angular velocity, or rate of speed or direction of a rotating object. The ADXRS646TBGZ-EP-RL gyroscope has a high-performance advanced EPCOS MEMS gyroscope design that provides high accuracy, stability, and reliability.

The ADXRS646TBGZ-EP-RL gyroscope is a compact, high-performance, low-power motion sensing device capable of measuring angular velocity with high accuracy and stability. The advanced EPCOS MEMS gyroscope design utilizes a high-precision micromechanical capacitive sensing element for detection and measurement of angular rate. It features a self-threaded, easy to assemble, and rigid surface mount packaging, and is designed with an integrated temperature sensor that compensates for temperature-related drift. The mechanical design is resistant to vibration, shock, and other environmental factors. The ADXRS646TBGZ-EP-RL also features a low-noise amplifier that improves signal-to-noise ratio for enhanced performance and reliability.

The ADXRS646TBGZ-EP-RL gyroscope is suitable for a wide variety of applications that require high accuracy and low-power operation. One of the key applications it can be used for is navigational tasks, as it is capable of providing high-precision information on moving objects. It is also used for controlling the movement of servo motors, for stabilizing camera lens, and for robotics. The gyroscope is specifically designed to offer an excellent performance in automotive applications, as it is able to provide stability and precise information on the vehicle\'s motion. This information can be used to enhance safety, improve efficiency, and partially or fully automate certain processes.

The working principle of the ADXRS646TBGZ-EP-RL gyroscope is based on the Coriolis effect, which is a force that is generated when an object is rotated. The gyroscope utilizes the Coriolis force to detect changes in angular velocity. The device consists of a tuning-fork type structure, which is suspended in the middle of two gravitational fields. When the device is not rotated, there is no Coriolis effect and the tuning-fork structure is in balance. When angular velocity is sensed, a force is generated by the Coriolis effect, which causes the tuning-fork structure to tilt, creating an imbalance. This imbalance is detected by the onboard amplifier, which further amplifies the signal and outputs the value of angular velocity.

In conclusion, the ADXRS646TBGZ-EP-RL gyroscope is a high-performance motion sensor designed for a wide range of applications. It is capable of detecting small changes in angular velocity with high accuracy and stability. Its advanced EPCOS MEMS design provides enhanced performance and reliability. The mechanical design is rugged, and the onboard amplifier improves signal-to-noise ratio. The working principle of the gyroscope relies on the Coriolis effect to detect changes in angular velocity.

The specific data is subject to PDF, and the above content is for reference

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